Desrumaux C, Labeur C, Verhee A, Tavernier J, Vandekerckhove J, Rosseneu M, Peelman F
Laboratory for Lipoprotein Chemistry, Faculty of Medicine, University of Ghent, B-9000 Ghent, Belgium.
J Biol Chem. 2001 Feb 23;276(8):5908-15. doi: 10.1074/jbc.M008420200. Epub 2000 Nov 16.
The plasma phospholipid transfer protein (PLTP) belongs to the lipid transfer/lipopolysaccharide binding protein (LT/LBP) family, together with the cholesteryl ester transfer protein, the lipopolysaccharide binding protein (LBP) and the bactericidal permeability increasing protein (BPI). In the present study, we used the crystallographic data available for BPI to build a three-dimensional model for PLTP. Multiple sequence alignment suggested that, in PLTP, a cluster of hydrophobic residues substitutes for a cluster of positively charged residues found on the surface of LBP and BPI, which is critical for interaction with lipopolysaccharides. According to the PLTP model, these hydrophobic residues are situated on an exposed hydrophobic patch at the N-terminal tip of the molecule. To assess the role of this hydrophobic cluster for the functional activity of PLTP, single point alanine mutants were engineered. Phospholipid transfer from liposomes to high density lipoprotein (HDL) by the W91A, F92A, and F93A PLTP mutants was drastically reduced, whereas their transfer activity toward very low density lipoprotein and low density lipoprotein did not change. The HDL size conversion activity of the mutants was reduced to the same extent as the PLTP transfer activity toward HDL. Based on these results, we propose that a functional solvent-exposed hydrophobic cluster in the PLTP molecule specifically contributes to the PLTP transfer activity on HDL substrates.
血浆磷脂转运蛋白(PLTP)属于脂质转运/脂多糖结合蛋白(LT/LBP)家族,与胆固醇酯转运蛋白、脂多糖结合蛋白(LBP)和杀菌通透性增加蛋白(BPI)同属该家族。在本研究中,我们利用已有的BPI晶体学数据构建了PLTP的三维模型。多序列比对表明,在PLTP中,一簇疏水残基替代了LBP和BPI表面发现的一簇带正电荷的残基,这对于与脂多糖的相互作用至关重要。根据PLTP模型,这些疏水残基位于分子N端末端的一个暴露的疏水区域。为了评估这一疏水簇对PLTP功能活性的作用,构建了单点丙氨酸突变体。W91A、F9.A和F93A PLTP突变体介导的磷脂从脂质体向高密度脂蛋白(HDL)的转运大幅降低,而它们对极低密度脂蛋白和低密度脂蛋白的转运活性没有变化。突变体的HDL大小转换活性降低的程度与PLTP对HDL的转运活性降低程度相同。基于这些结果,我们提出PLTP分子中一个功能性的溶剂暴露疏水簇对PLTP在HDL底物上的转运活性有特异性贡献。